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前庭暗细胞中跨上皮钾离子转运的pH敏感性

The pH-sensitivity of transepithelial K+ transport in vestibular dark cells.

作者信息

Wangemann P, Liu J, Shiga N

机构信息

Cell Physiology Laboratory, Boys Town National Research Hospital, Omaha, NE 68131, USA.

出版信息

J Membr Biol. 1995 Oct;147(3):255-62. doi: 10.1007/BF00234523.

Abstract

The pH-sensitivity of transepithelial K+ transport was studied in vitro in isolated vestibular dark cell epithelium from the gerbil ampulla. The cytosolic pH (pHi) was measured microfluorometrically with the pH-sensitive dye 2',7'-bicarboxyethyl-5(6)-carboxyfluorescein (BCECF) and the equivalent short-circuit current (Isc), which is a measure for transepithelial K+ secretion, was calculated from measurements of the transepithelial voltage (Vt) and the transepithelial resistance (Rt) in a micro-Ussing chamber. All experiments were conducted in virtually HCO3(-)-free solutions. Under control conditions, pHi was 7.01 +/- 0.04 (n = 18), Vt was 9.1 +/- 0.5 mV, Rt 16.7 +/- 0.09 omega cm2, and Isc was 587 +/- 30 microA/cm2 (n = 49). Addition of 20 mM propionate- caused a biphasic effect involving an initial acidification of pHi, increase in Vt and Isc and decrease in Rt and a subsequent alkalinization of pHi, decrease of Vt and increase of Rt. Removal of propionate- caused a transient effect involving an alkalinization of pHi, a decrease of Vt and Isc and an increase in Rt, pHi in the presence of propionate- exceeded pHi under control conditions. Effects of propionate- on Vt, Rt and Isc were significantly larger when propionate- was applied to the basolateral side rather than to the apical side of the epithelium. The pHi-sensitivity of Isc between pH 6.8 and 7.5 was -1089 microA/(cm2.pH-unit) suggesting that K+ secretion ceases at about pHi 7.6. Acidification of the extracellular pH (pHo) caused an increase of Vt and Isc and a decrease of Rt most likely due to acidification of pHi. Effects were significantly larger when the extracellular acidification was applied to the basolateral side rather than to the apical side of the epithelium. The pHo sensitivity of Isc between pH 7.4 and 6.4 was -155 microA/(cm2.pH unit). These results demonstrate that transepithelial K+ transport is sensitive to pHi and pHo and that vestibular dark cells contain propionate- uptake mechanism. Further, the data suggest that cytosolic acidification activates and that cytosolic alkalinization inactivates the slowly activating K+ channel (IsK) in the apical membrane. Whether the effect of pHi on the IsK channel is a direct or indirect effect remains to be determined.

摘要

在体外对沙鼠壶腹分离的前庭暗细胞上皮中的跨上皮钾离子转运的pH敏感性进行了研究。用pH敏感染料2',7'-二羧乙基-5(6)-羧基荧光素(BCECF)通过显微荧光测定法测量胞质pH(pHi),并根据微尤斯灌流小室中跨上皮电压(Vt)和跨上皮电阻(Rt)的测量值计算等效短路电流(Isc),Isc是跨上皮钾离子分泌的一个指标。所有实验均在几乎无HCO3(-)的溶液中进行。在对照条件下,pHi为7.01±0.04(n = 18),Vt为9.1±0.5 mV,Rt为16.7±0.09Ω·cm2,Isc为587±30μA/cm2(n = 49)。添加20 mM丙酸盐会产生双相效应,包括pHi的初始酸化、Vt和Isc的增加以及Rt的降低,随后是pHi的碱化、Vt的降低和Rt的增加。去除丙酸盐会产生短暂效应,包括pHi的碱化、Vt和Isc的降低以及Rt的增加,存在丙酸盐时的pHi超过对照条件下的pHi。当丙酸盐应用于上皮的基底外侧而非顶端时,其对Vt、Rt和Isc的影响显著更大。在pH 6.8至7.5之间,Isc的pHi敏感性为-1089μA/(cm2·pH单位),表明钾离子分泌在约pHi 7.6时停止。细胞外pH(pHo)的酸化导致Vt和Isc增加以及Rt降低,最可能是由于pHi的酸化。当细胞外酸化应用于上皮的基底外侧而非顶端时,效应显著更大。在pH 7.4至6.4之间,Isc的pHo敏感性为-155μA/(cm2·pH单位)。这些结果表明跨上皮钾离子转运对pHi和pHo敏感,并且前庭暗细胞含有丙酸盐摄取机制。此外,数据表明胞质酸化激活而胞质碱化使顶端膜中缓慢激活的钾离子通道(IsK)失活。pHi对IsK通道的影响是直接还是间接效应仍有待确定。

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